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54篇 您的检索式:作者名="Brezesinski"
    题名 作者 年代 出处 被引量
1Block Copolymer-Templated BiFeO3 Nanoarchitectures Composed of Phase-Pure Crystallites Intermingled with a Continuous Mesoporosity: Effective Visible-Light Photocatalysts?显示文摘此处被报导可见光的光敏的铋铁酸盐(BiFeO3 ) 的软模板的合成在薄电影用形式的 nanoarchitectures 一 poly (ethylene-co-butylene )-block-poly(ethylene 氧化物) diblock 共聚物作为指导结构的代理人。我们证实(1 ) 自我装配的材料在这采用了工作在在 550 楢' 忆次繕 N 汢 退火以后是高度水晶的吗??Christian Reitz Christian Suchomski Christoph Weidmann Torsten Brezesinski 2011Nano Research2011,4,4:4
2Tailoring the LiNbO_(3)coating of Ni-rich cathode materials for stable and high-performance all-solid-state batteries显示文摘The research and development of advanced nanocoatings for high-capacity cathode materials is currently a hot topic in the field of solid-state batteries(SSBs).Protective surface coatings prevent direct contact between the cathode material and solid electrolyte,thereby inhibiting detrimental interfacial decomposition reactions.This is particularly important when using lithium thiophosphate superionic solid electrolytes,as these materials exhibit a narrow electrochemical stability window,and therefore,are prone to degradation during battery operation.Herein we show that the cycling performance of LiNbO_(3)-coated Ni-rich LiNi_(x)Co_(y)Mn_(z)O_(2)cathode materials is strongly dependent on the sample history and(coating)synthesis conditions.We demonstrate that post-treatment in a pure oxygen atmosphere at 350℃results in the formation of a surface layer with a unique microstructure,consisting of LiNbO_(3)nanoparticles distributed in a carbonate matrix.If tested at 45℃and C/5 rate in pellet-stack SSB full cells with Li_(4)Ti_(5)O_(12)and Li_(6)PS_(5)Cl as anode material and solid electrolyte,respectively,around 80%of the initial specific discharge capacity is retained after 200 cycles(~160 mAh·g^(−1),~1.7 mAh·cm^(−2)).Our results highlight the importance of tailoring the coating chemistry to the electrode material(s)for practical SSB applications.Seyedhosein Payandeh Florian Strauss Andrey Mazilkin Aleksandr Kondrakov Torsten Brezesinski 2022Nano Research Energy2022,1,3:2
3Ordered mesoporousalpha-Mo03 with iso-oriented nanocrystalline walls for thin-filmpscudocapacitors显示文摘Brezesinski T Wang J Tolbert S H ef al 2012Nat Mater2012,9,2:1
4Hierarchical Porous Silica Materials with a Trimodal Pore System Using Surfaetant Templates 显示文摘Kuang D B Brezesinski T Smarsly B 2004J Am Chem Soc2004,126,10:1
5Next generation pseudocapacitor materials from sol-gel derived transition metal oxides显示文摘Brezesinski T Wang J Tolbert SH 2011J Sol-Gel Sci Technol2011,57,:1
6Surface activity and structures of two fragments of the human antimicrobial LL-37显示文摘Dannehl C Gutsmann T Brezesinski G 2013Colloids Surf B Biointerfaces2013,109,:1
7Structural changes of monolayers at the air/water interface contacted with n-alkanes显示文摘Brezesinski G Thoma M Struth B M(O)hwald H 0,,08:1
8Ordered mesoporous MFe2O4 (M=Co,Cu,Mg,Ni,Zn) thin films with nanocrystalline walls,uniform 16 nm diameter pores and high thermal stability:template-directed synthesis and characterization of redox active trevorite显示文摘HAETGE J SUCHOMSKI C BREZESINSKI T 0,,:1
9Hierarchical porous silica materials with a trimodal pore system using surfactant templates显示文摘Kuang D Brezesinski T Smarsly B 2004Am Chem Soc2004,126,10:1
10Ordered large-pore mesoporous Li4TisO~2 spinel thin film electrodes with nanocrystalline framework for high rate reehargeable lithium bat- teries: relationships among charge storage, electrical conductivity, and nanoscale structure显示文摘HAETGE J HARTMANN P BREZESINSKI K 2011Chem Mater2011,,23:1
11Crystal-to-crystal Phase Transition in Self-assembled Mesoporous Iron Oxide Films显示文摘Brezesinski T Groenewolt M Antonietti M 2006Angewandte Chemie International Edition2006,45,5:1
12Ordered mesoporous silicon through magnesium reduction of polymer templated silica thin films显示文摘Richman E K Kang C B Brezesinski T 0,,:1
13Ordered large-pore mesoporous Li4Ti5O12 spinel thin film electrodes with nanoerystalline framework for high rate rechargeable lithium batteries: relationships among charge storage, electrical conductivity, and nanoscale structure显示文摘Haetge J Hartrnann P Brezesinski K 2011Chem Mater2011,23,19:1
14Pseudocapaeitive contribu- tions to charge storage in highly ordered mesoporous group V transi- tion metal oxides with iso-oriented layered nanoerystalline domains 显示文摘Brezesinski K Wang J Hactge J 2010Journal of the American Chemical Society2010,132,20:1
15Ordered large- pore mesoporous LiaTi5012 spinel thin film electrodes with nanocrys- talline framework for high rate rechargeable lithium batteries: rela- tionships among charge storage, electrical conductivity,and nano- scale structure显示文摘HAETGE J HARTMANN P BREZESINSKI K 2011Chem Mater2011,,23:1
16Influence of ether linkages on the structure of double-chain phospholipid mono layers显示文摘Brezesinski G Dietrich A Struth B 1995ChemPhys Lipids1995,76,2:1
17Pseudocapacitive Contribution to Charge Storage in Highly Ordered Mesoporous Group V Transition Metal Oxides with Iso-Oriented Layered Nanocrystalline Domains 显示文摘Brezesinski K Wang J Haetge J 2010J Am Chem Soc2010,132,20:1
18Highly crystalline cubic mesoporous TiO2 with 10-nm pore diameter made with a new block copolymer template 显示文摘SMARSY B OROSSO D BREZESINSKI T 2004Chem Mater2004,16,15:1
19On the role of surface carbonate species in determining the cycling performance of all-solid-state batteries显示文摘This short perspective summarizes recent findings on the role of residual lithium present on the surface of layered Ni-rich oxide cathode materials in liquid-and solid-electrolyte based batteries,with emphasis placed on the carbonate species.Challenges and future research opportunities in the development of carbonate-containing protective nanocoatings for inorganic solid-state battery applications are also discussed.Florian Strauss Seyedhosein Payandeh Aleksandr Kondrakov Torsten Brezesinski 2022Materials Futures2022,1,2:1
20Novel Cationic Lipids Based on Malonic Acid Amides Backhone: Transfeetion Efficacy and Cell Toxicity Properties 显示文摘HEINZE M BREZESINSKI G DOBNER B 2010Bioeonjugate Chem2010,21,:1
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